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1. Leptospira interrogans biofilm transcriptome highlights adaption to starvation and general stress while maintaining virulence

2. Evolutionary insights into the emergence of virulent Leptospira spirochetes.

3. The Arsenal of Leptospira Species against Oxidants

4. The FUR-like regulators PerRA and PerRB integrate a complex regulatory network that promotes mammalian host-adaptation and virulence of Leptospira interrogans.

5. The oxidative stress response of pathogenic Leptospira is controlled by two peroxide stress regulators which putatively cooperate in controlling virulence.

6. The transcriptional response of pathogenic Leptospira to peroxide reveals new defenses against infection-related oxidative stress.

8. Analysis of a Spontaneous Non-Motile and Avirulent Mutant Shows That FliM Is Required for Full Endoflagella Assembly in Leptospira interrogans.

9. The oxidative stress response of pathogenic Leptospira is controlled by two peroxide stress regulators which putatively cooperate in controlling virulence

10. The Single-Step Method of RNA Purification Applied to Leptospira

11. Survival Tests for Leptospira spp

12. The adaptive transcriptional response of pathogenic Leptospira to peroxide reveals new defenses against infection-related oxidative stress

13. A novel flagellar sheath protein, FcpA, determines filament coiling, translational motility and virulence for theLeptospiraspirochete

14. Editorial: Pathogenesis of

15. Pathogenesis of Leptospira

16. Structure and function of theLeptospira interrogansperoxide stress regulator (PerR), an atypical PerR devoid of a structural metal-binding site

17. PA28αβ Reduces Size and Increases Hydrophilicity of 20S Immunoproteasome Peptide Products

18. Production of Recombinant Proteins in the lon -Deficient BL21(DE3) Strain of Escherichia coli in the Absence of the DnaK Chaperone

19. Insights into the inter-ring plasticity of caseinolytic proteases from the X-ray structure ofMycobacterium tuberculosisClpP1

20. A Replicative Plasmid Vector Allows Efficient Complementation of Pathogenic Leptospira Strains

21. Trehalose Accumulation during Cellular Stress Protects Cells and Cellular Proteins from Damage by Oxygen Radicals

22. The unfolding of substrates and ubiquitin-independentprotein degradation by proteasomes

23. Identified members of the Streptomyces lividans AdpA regulon involved in differentiation and secondary metabolism

24. The COOH-terminal Peptide Binding Domain Is Essential for Self-association of the Molecular Chaperone HSC70

25. Structural and Functional Characterization of an Orphan ATP-Binding Cassette ATPase Involved in Manganese Utilization and Tolerance in Leptospira spp

28. Analysis of monomeric mutants of HSC70: a possible relationship between oligomerization and functional properties

29. Proteasomes and their associated ATPases: a destructive combination

31. ATP hydrolysis by the proteasome regulatory complex PAN serves multiple functions in protein degradation

32. PAN, the proteasome-activating nucleotidase from archaebacteria, is a protein-unfolding molecular chaperone

33. Effect of nucleotides, peptides, and unfolded proteins on the self-association of the molecular chaperone HSC70

34. Self-association of the molecular chaperone HSC70

35. Overexpression in Escherichia coli, purification and characterization of the molecular chaperone HSC70

37. Alive pathogenic and saprophytic leptospires enter and exit human and mouse macrophages with no intracellular replication

38. 4-Methylcytosine DNA modification is critical for global epigenetic regulation and virulence in the human pathogen Leptospira interrogans

39. The zoonotic pathogen Leptospira interrogans mitigates environmental stress through cyclic-di-GMP-controlled biofilm production

40. Gene inactivation of a chemotaxis operon in the pathogen Leptospira interrogans

41. The Pta-AckA pathway controlling acetyl phosphate levels and the phosphorylation state of the DegU orphan response regulator both play a role in regulating Listeria monocytogenes motility and chemotaxis

42. The DegU orphan response regulator of Listeria monocytogenes autorepresses its own synthesis and is required for bacterial motility, virulence and biofilm formation

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